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Depth from gradient fields and control points: bias correction in photometric stereo

机译:梯度场和控制点的深度:光度立体中的偏差校正

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摘要

Photometric stereo is capable of high quality reconstruction of fine shape details, but is prone to systematic errors due to nonideal illumination or imperfect calibration. We present methods for correcting the bias, using sparse control points of known 3D location. An easy way to obtain control points is via the projection of a dot-matrix pattern using a laser pointer with a suitable adapter, and triangulation. Straight forward incorporation of control points as constraints in the computation of depth from the gradient field leads to singularities. We propose two well-behaved methods for bias correction using control points. One is based on constrained weighted least squares extension of depth from gradient-field computation. The other adds an interpolation surface to the reconstructed shape. Practical computation of depth from a gradient field requires an efficient numerical scheme. We employ full-multigrid computation with successive over-relaxation and show how to propagate the gradient field and the control points through the pyramid. Experimental results demonstrate significant bias reduction in photometric stereo, allowing high reconstruction quality even in the presence of severe setup errors.
机译:光度立体能够对精细形状的细节进行高质量的重建,但是由于不理想的照明或不完善的校准而容易出现系统误差。我们介绍了使用已知3D位置的稀疏控制点来校正偏差的方法。一种获得控制点的简单方法是通过使用带有合适适配器的激光指示器投影点矩阵图案并进行三角测量。直接将控制点合并为梯度场深度计算中的约束条件会导致奇异。我们提出了两种行为良好的方法来使用控制点进行偏差校正。一种基于来自梯度场计算的深度的约束加权最小二乘扩展。另一个将插值曲面添加到重建的形状中。从梯度场实际计算深度需要有效的数值方案。我们采用具有连续超松弛的全多重网格计算,并展示了如何通过金字塔传播梯度场和控制点。实验结果表明,光度学立体声的偏差大大降低,即使在存在严重设置错误的情况下,也可以实现较高的重建质量。

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